CBSE Class 9 Science Exemplar Chapter 2: Is Matter Around Us Pure - NCERT Solutions

NCERT Solutions PDF Class 9 PDF

This comprehensive set of NCERT Solutions for CBSE Class 9 Science Exemplar, Chapter 2, "Is Matter Around Us Pure," provides in-depth explanations and answers to key questions. The chapter delves into the fundamental concepts of matter, distinguishing between pure substances and mixtures. It explores the characteristics of pure substances, including elements and compounds, and the properties of different types of mixtures, such as homogeneous and heterogeneous. The solutions also cover important chemical processes like corrosion and dissolution, explaining the underlying scientific principles. This resource is designed to help students grasp these concepts thoroughly, clarify doubts, and prepare effectively for their examinations by offering clear, step-by-step explanations for each question.

Quick info

BoardCBSE
ClassClass 9
SubjectScience Exemplar
Session2026
LanguageEnglish
TypeNCERT Solutions
ChapterChapter 2

Chapter summary

Chapter 2 of the CBSE Class 9 Science Exemplar focuses on identifying whether matter is pure or impure. This NCERT Solutions set covers multiple-choice questions that test the understanding of pure substances, their properties, and examples. It also explains concepts like corrosion, dissolution, and the Tyndall effect in mixtures, particularly colloids. The solutions clarify the difference between homogeneous and heterogeneous mixtures and provide examples like air and wood. This chapter is crucial for building a foundational understanding of chemistry.

Learning outcomes

  • Understand the characteristics of pure substances.
  • Differentiate between pure substances and mixtures.
  • Identify examples of elements and compounds.
  • Explain the process of corrosion and its chemical nature.
  • Describe homogeneous and heterogeneous mixtures.
  • Explain the Tyndall effect in colloidal solutions.

Topics covered

Paper topics

  • Pure Substances
  • Mixtures
  • Elements
  • Compounds
  • Homogeneous Mixtures
  • Heterogeneous Mixtures
  • Colloids
  • Tyndall Effect
  • Corrosion
  • Rusting of Iron
  • Dissolution
  • Tincture of Iodine

Important topics

  • Distinguishing Pure Substances from Mixtures
  • Properties of Homogeneous and Heterogeneous Mixtures
  • Understanding Corrosion as a Chemical Change
  • The Tyndall Effect in Colloids
  • Composition of Tincture of Iodine

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Questions and Solutions

Question 1

Which of the following statements are true for pure substances?
  1. Pure substances contain only one kind of particles
  2. Pure substances may be compounds or mixtures
  3. Pure substances have the same composition throughout
  4. Pure substances can be exemplified by all elements other than nickel
Which option correctly combines the true statements?
Solution: The correct statements about pure substances are (i) and (iii).

A pure substance is defined as a substance that consists of only one type of particle. This means that all the constituent particles (atoms or molecules) are identical. Furthermore, pure substances exhibit a uniform composition throughout their mass. For example, pure water (H₂O) always consists of only water molecules and has the same properties everywhere. Elements like iron or oxygen, and compounds like sodium chloride (NaCl) or water (H₂O), are pure substances. Mixtures, on the other hand, contain two or more pure substances that are not chemically combined and can have variable compositions. Therefore, statement (ii) is incorrect because pure substances can be elements or compounds, but not mixtures. Statement (iv) is also incorrect because while elements are pure substances, the exclusion of nickel is arbitrary and incorrect; nickel itself is a pure substance.

Answer: (i) and (iii) are true statements about pure substances.

Question 2

The rusting of an article made up of iron is called:
  1. Corrosion and it is a physical as well as chemical change
  2. Dissolution and it is a physical change
  3. Corrosion and it is a chemical change
  4. Dissolution and it is a chemical change
Solution: Rusting of iron is a process of corrosion, and it is fundamentally a chemical change.

Corrosion is the process where a metal reacts with substances in its environment, such as oxygen and moisture, to form new chemical compounds. Rusting specifically refers to the corrosion of iron and its alloys. The reddish-brown substance formed, known as rust, is primarily hydrated iron(III) oxide (Fe_2O_3 \cdot nH_2O). This is a new chemical compound with properties different from elemental iron. Therefore, rusting is a chemical change because the identity of the substance is altered, and it cannot be easily reversed to obtain the original iron. A physical change, in contrast, alters the form or appearance but not the chemical identity of the substance (e.g., melting ice). Dissolution is the process of a solute dissolving in a solvent, which can be physical or chemical depending on the substances involved, but rusting is specifically classified as corrosion.

Answer: Corrosion and it is a chemical change.

Question 3

A mixture of sulphur and carbon disulphide is:
  1. Heterogeneous and shows Tyndall effect
  2. Homogeneous and shows Tyndall effect
  3. Heterogeneous and does not show Tyndall effect
  4. Homogeneous and does not show Tyndall effect
Solution: A mixture of sulphur and carbon disulphide, when properly prepared, often forms a colloidal solution, which is heterogeneous and exhibits the Tyndall effect.

When sulphur is mixed with carbon disulphide, it dissolves to some extent. If the concentration is appropriate, or if the mixture is allowed to stand, it can form a colloidal dispersion. Colloidal solutions consist of particles that are larger than those in a true solution but small enough to remain suspended. These particles are large enough to scatter light, a phenomenon known as the Tyndall effect. Although colloids may appear homogeneous to the naked eye, they are fundamentally heterogeneous because the dispersed particles are distinct from the dispersion medium. True solutions, which are homogeneous, do not show the Tyndall effect because their solute particles are too small to scatter light.

Answer: Heterogeneous and shows Tyndall effect.

Question 4

Tincture of iodine has antiseptic properties. This solution is made by dissolving:
  1. Iodine in potassium iodide
  2. Iodine in vaseline
  3. Iodine in water
  4. Iodine in alcohol
Solution: Tincture of iodine is prepared by dissolving iodine in alcohol.

Tincture of iodine is a common antiseptic solution used for disinfecting wounds. It is typically prepared by dissolving a small percentage (usually 2-7%) of elemental iodine (I_2) in a solvent. While potassium iodide (KI) is often added to help solubilize the iodine in the solvent, the primary solvent used is alcohol (ethanol or a mixture of ethanol and water). Iodine has limited solubility in water, making water an unsuitable solvent for preparing an effective tincture. Vaseline is a petroleum jelly and not a solvent for iodine in this context. Therefore, alcohol is the correct solvent for preparing tincture of iodine.

Answer: Iodine in alcohol.

Question 5

Which of the following are homogeneous in nature?
  1. Ice
  2. Wood
  3. Soil
  4. Air
Select the correct option from the following:
  1. (i) and (ii)
  2. (ii) and (iii)
  3. (i) and (iv)
  4. (iii) and (iv)
Solution: Among the given options, ice and air are homogeneous in nature.

A homogeneous substance has a uniform composition and appearance throughout. Ice, being the solid form of pure water, consists solely of water molecules arranged in a crystalline structure, making it homogeneous. Air is a mixture of gases (primarily nitrogen and oxygen), but these gases are uniformly distributed, resulting in a homogeneous mixture. Wood, on the other hand, is a heterogeneous material; it contains different components like cellulose, lignin, and various other organic compounds, often visible as grains or knots. Soil is also heterogeneous, composed of mineral particles, organic matter, water, and air, with a non-uniform distribution of components.

Answer: (i) Ice and (iv) Air are homogeneous.

Common mistakes

  • Confusing pure substances with homogeneous mixtures.
  • Misidentifying chemical changes (like rusting) as physical changes.
  • Incorrectly classifying mixtures based on appearance alone.
  • Not recognizing that colloids are heterogeneous mixtures.

Revision tips

  • Focus on the definitions and properties of pure substances and mixtures.
  • Review the examples provided for each concept, such as elements, compounds, and different types of mixtures.
  • Understand the difference between physical and chemical changes, using rusting as a key example.
  • Pay attention to the explanation of the Tyndall effect and its relevance to colloidal solutions.

Practice MCQs

Q1. Which of the following statements accurately describe pure substances?

Q2. Rusting of iron is best described as:

Q3. A mixture of sulfur and carbon disulfide is characterized by:

Q4. Tincture of iodine, known for its antiseptic properties, is prepared by dissolving:

Q5. Which of the following substances are homogeneous in nature?

Frequently asked questions

What is the main focus of CBSE Class 9 Science Exemplar Chapter 2?

Chapter 2, 'Is Matter Around Us Pure,' focuses on differentiating between pure substances and mixtures, understanding their properties, and explaining related concepts like corrosion and the Tyndall effect.

How do these NCERT Solutions help students?

These solutions provide clear, rewritten explanations for each question, helping students understand complex concepts, clarify doubts, and prepare effectively for their exams.

What is a pure substance according to the chapter?

A pure substance contains only one kind of particle and has the same composition throughout. Examples include elements and compounds.

What is the difference between homogeneous and heterogeneous mixtures?

Homogeneous mixtures have a uniform composition throughout (like air), while heterogeneous mixtures do not, and their components can often be seen (like soil or a sulfur-carbon disulfide mixture).

Is rusting a physical or chemical change?

Rusting of iron is a chemical change because it involves the formation of a new chemical compound (hydrated iron oxide) with different properties.

What is the Tyndall effect and where is it observed?

The Tyndall effect is the scattering of light by particles in a colloid. It is observed in heterogeneous mixtures like colloidal solutions.

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